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Particle circulation loops in solar energy capture and storage: Gas-solid flow and heat transfer considerations

机译:太阳能捕获和存储中的颗粒循环回路:气固流动和传热的考虑

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A novel application of powders relies on their use as heat transfer medium for heat capture, conveying and storage. The use of powders as heat transfer fluid in concentrated solar systems is discussed with respect to current technologies. The specific application reported upon is the use of powder loops in Solar Power Tower plants. In the proposed receiver technology, SiC powder is conveyed as a dense particle suspension through a multi-tube solar receiver in a bubbling fluidization mode, the upwards flow being established by pressurizing the powder feed. Tests were conducted with a single-tube receiver unit at the 1 MW solar furnace of CNRS (Odeillo Font-Romeu, F). The measured wall-to-suspension heat transfer coefficient is a function of operating temperature, applied air velocity and imposed solid circulation flux: values increased with increasing solids flux from similar to 430 to 1120 W/m(2) K. Empirical approaches and a heat transfer model were applied to compare experimental and predicted values of the heat transfer coefficient, with a fair agreement obtained. The research moreover provides initial data concerning the overall economy of the system. The high temperature of the circulating powder leads to an increased power cycle efficiency, an increased storage density, reduced thermal power requirements, reduced heliostat field size, reduced parasitic power consumption and increased plant capacity factor. (C) 2015 Elsevier Ltd. All rights reserved.
机译:粉末的一种新颖应用依赖于它们用作传热介质进行热量收集,输送和储存的用途。关于当前技术,讨论了在集中式太阳能系统中将粉末用作传热流体。报告的具体应用是在太阳能塔式设备中使用粉末回路。在提出的接收器技术中,SiC粉末以致密的颗粒悬浮液的形式以鼓泡流化方式通过多管太阳能接收器传输,通过加压粉末进料建立向上的流动。测试是在CNRS的1 MW太阳炉(Odeillo Font-Romeu,F)上使用单管接收器单元进行的。测得的壁到悬浮液的传热系数是工作温度,施加的空气速度和施加的固体循环通量的函数:数值随固体通量的增加而从相似的430增至1120 W / m(2)K。应用传热模型对传热系数的实验值和预测值进行比较,得出的结论是一致的。研究还提供了有关系统整体经济性的初步数据。循环粉末的高温导致功率循环效率的提高,存储密度的增加,热功率需求的降低,定日镜场尺寸的减小,寄生功率消耗的减小以及设备容量因子的增加。 (C)2015 Elsevier Ltd.保留所有权利。

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